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Unambiguous Phase Spaces for Subregions

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abstract

The covariant phase space technique is a powerful formalism for understanding the Hamiltonian description of covariant field theories. However, applications of this technique to problems involving subregions, such as the exterior of a black hole, have heretofore been plagued by boundary ambiguities. We provide a resolution of these ambiguities by directly computing the symplectic structure from the path integral, showing that it may be written as a contour integral around a partial Cauchy surface. This result has implications for gauge symmetry and entanglement.

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Dressed Subsystems in Classical Gravity

physics.class-ph · 2025-01-14 · conditional · novelty 7.0

Internally dressed subsystems, whose boundaries are located by fields within the region, are exactly those whose observables close under Poisson brackets in generally covariant theories.

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  • Dressed Subsystems in Classical Gravity physics.class-ph · 2025-01-14 · conditional · none · ref 41 · internal anchor

    Internally dressed subsystems, whose boundaries are located by fields within the region, are exactly those whose observables close under Poisson brackets in generally covariant theories.